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An asymmetric attraction model for the diversity and robustness of cell arrangement in nematodes

机译:线虫细胞排列的多样性和鲁棒性的非对称吸引模型

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摘要

During early embryogenesis in animals, cells are arranged into a species-specific pattern in a robust manner. Diverse cell arrangement patterns are observed, even among close relatives. In the present study, we evaluated the mechanisms by which the diversity and robustness of cell arrangements are achieved in developing embryos. We successfully reproduced various patterns of cell arrangements observed in various nematode species in Caenorhabditis elegans embryos by altering the eggshell shapes. The findings suggest that the observed diversity of cell arrangements can be explained by differences in the eggshell shape. Additionally, we found that the cell arrangement was robust against eggshell deformation. Computational modeling revealed that, in addition to repulsive forces, attractive forces are sufficient to achieve such robustness. The present model is also capable of simulating the effect of changing cell division orientation. Genetic perturbation experiments demonstrated that attractive forces derived from cell adhesion are necessary for the robustness. The proposed model accounts for both diversity and robustness of cell arrangements, and contributes to our understanding of how the diversity and robustness of cell arrangements are achieved in developing embryos.
机译:在动物的早期胚胎发生过程中,细胞以强大的方式排列成特定物种的模式。即使在近亲中也观察到多种细胞排列方式。在本研究中,我们评估了在发育中的胚胎中实现细胞排列的多样性和鲁棒性的机制。我们成功地改变了蛋壳的形状,再现了秀丽隐杆线虫胚胎中各种线虫物种中观察到的细胞排列的各种模式。这些发现表明,观察到的细胞排列的多样性可以通过蛋壳形状的差异来解释。另外,我们发现细胞排列对蛋壳变形具有鲁棒性。计算模型表明,除了排斥力以外,吸引力还足以实现这种鲁棒性。本模型还能够模拟改变细胞分裂方向的影响。遗传扰动实验表明,细胞粘附产生的吸引力对于鲁棒性是必需的。所提出的模型考虑了细胞排列的多样性和鲁棒性,并且有助于我们理解如何在发育中的胚胎中实现细胞排列的多样性和鲁棒性。

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